胶粘剂
木质素
纤维素
材料科学
耐水性
复合材料
湿强度
水溶液
粘接
共价键
化学工程
化学
有机化学
极限抗拉强度
图层(电子)
工程类
作者
Jiafeng Yuan,Guanben Du,Hongxing Yang,Sichen Liu,Seongsu Park,Tongda Liu,Xin Ran,Byung‐Dae Park,Wei Gao,Long Yang
标识
DOI:10.1016/j.indcrop.2023.117279
摘要
Herein, lignin was functionalized to obtain quinonoid lignin (QL) and epoxidized lignin (EL), and cellulose was modified to be aminated cellulose (AC). A novel fully bio-based adhesive of QL-AC-EL with multiple cross-linked networks was designed based on Schiff base and addition reaction. Furthermore, the natural wood interface was activated by brushing aqueous solution of 3-aminopropyltriethoxysilane (APTES) to obtain a functional interface with many -NH2 groups. Finally, the created QL-AC-EL was used as a specific adhesive to glue wood interface with abundant -NH2 groups. The bonding performance was evaluated that the dry strength of the plywood specimens made from activated wood interface was 3.2 MPa, which increased by 123.8% than that of natural wood interface. It is amazing that the wet strength of plywood by using activated wood interface was 1.73 MPa, whereas wet bonding strength of natural wood was zero. The significantly improvement of the bonding properties should be caused by the covalent crosslinking between adhesive and activated wood interface, which plays an important role in the enhanced water resistance of the interfacial bonding stability. This work provided a new inspiration for the design of bio-based adhesives with excellent performance and water resistance from the interfacial chemical bonding perspective.
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